Unmanned aerial vehicle high-definition image acquisition device
By designing a protective cover and a magnetic metal fixing rod to fix the drone image acquisition device, the problem of easy damage to the drone's high-definition image acquisition device is solved, achieving convenient installation and effective protection of the camera.
Patent Information
- Application Number
- CN202520571773.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-28
AI Technical Summary
Existing high-definition image acquisition devices for drones lack protection, are easily damaged, and have poor practicality.
The protective cover is attached to a magnet via a magnetic metal fixing rod and is fixedly connected to the body via a fixing component. Combined with a telescopic component, it enables convenient installation and protection of the camera.
It enhances the stability of the device, facilitates disassembly and maintenance, protects the camera from damage, and improves the reliability of image acquisition.
Smart Images

Figure CN223835824U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of drone photography technology, specifically relating to a high-definition image acquisition device for drones. Background Technology
[0002] With the continuous development and advancement of technology, drones are being used more and more widely. Among these applications, drone image acquisition and processing technology has become one of the key technologies for drone applications. A high-definition image acquisition device for drones refers to a high-definition camera mounted on a drone that captures images of a target area, including videos or photos. It is generally used for drone monitoring and features durability, convenience, and ease of operation. Currently, existing high-definition image acquisition devices for drones are generally directly fixed to the bottom of the drone, facilitating disassembly and repair, but lack protective devices, making them prone to damage and impractical. Therefore, this utility model provides a high-definition image acquisition device for drones to solve the above problems. Summary of the Invention
[0003] To overcome the problems mentioned in the background art, this utility model provides a high-definition image acquisition device for unmanned aerial vehicles (UAVs). The protective cover of this utility model is attracted to a magnet via a magnetic metal fixing rod, and both sides of the protective cover are also fixedly connected to the drone body via fixing components, facilitating assembly and disassembly. During image acquisition, the camera is moved outside the protective cover; after acquisition, the camera is moved inside the protective cover, enhancing the protection of the camera.
[0004] To achieve the above objectives, this utility model is implemented through the following technical solution: a high-definition image acquisition device for unmanned aerial vehicles (UAVs), comprising a body 1, characterized in that: the device further comprises a high-definition camera 2, a protective cover 3, a fixing component 4, a magnet 5, and a telescopic component 6; the bottom of the body 1 is provided with a groove 7, and a circular hole 8 is provided in the middle of the groove 7; a magnet 5 is installed at the bottom of the circular hole 8; the top of the protective cover 3 is movably located within the groove 7; a fixing rod 9 is installed on the top of the protective cover 3 and inserted into the circular hole 8; the fixing rod 9 is a magnetic metal rod that can be attracted to the magnet 5; the protective cover 3 is also fixedly connected to the body 1 through the fixing component 4; a telescopic component 6 is horizontally installed inside the protective cover 3; a bracket 10 is installed at one end of the telescopic component 6; a through hole 11 is provided on the front side of the protective cover 3; the high-definition camera 2 passes through the through hole 11 and is installed on the bracket 10 at one end.
[0005] Furthermore, the telescopic component 6 is an electric telescopic rod, the bottom of which is installed on the inner wall of the rear side of the protective cover 3, and a bracket 10 is installed on the top of the electric telescopic rod.
[0006] Furthermore, the fixing component 4 includes a support plate 12, a movable plate 13, a limiting rod 14, a spring 15, a limiting plate 16, a pin 17, and a fixing block 18. Support plates 12 are installed on the bottom of both the left and right sides of the machine body 1. Limiting plates 16 are installed on the bottom of both the left and right sides of the machine body 1 in front of the support plates 12. A limiting rod 14 is installed between the support plate 12 and the limiting plate 16. A movable plate 13 is slidably installed on the limiting rod 14. A spring 15 is installed between the movable plate 13 and the support plate 12. Fixing blocks 18 are installed on the left and right sides of the protective cover 3 near the top. The fixing blocks 18 are provided with pin holes 19. A pin 17 is installed on the side of the movable plate 13 near the fixing block and inserted into the pin hole 19.
[0007] Furthermore, T-shaped grooves 20 are provided on the bottom of the left and right sides of the body 1 and between the support plate 12 and the limiting plate 16, and a T-shaped slider 21 that slides in the T-shaped grooves 20 is installed on the top of the moving plate 13.
[0008] Furthermore, a handle 22 is installed at the bottom of the movable plate 13.
[0009] Furthermore, an external threaded tube 23 is installed on the front side of the protective cover 3 and outside the through hole 11, and an internal threaded cap 24 is threadedly connected to the external threaded tube 23.
[0010] Furthermore, the bottom corners of the protective cover 3 are bolted with base plates 25.
[0011] The beneficial effects of this utility model are:
[0012] This utility model's protective cover uses a magnetic metal fixing rod to attract a magnet, making it easy to install on the bottom of the device. The protective cover is also fixed to the device on both sides by fixing components, enhancing the stability of the device and facilitating stable image acquisition. The device and the device are easy to disassemble and assemble, facilitating maintenance or replacement. When acquiring images, the camera is moved outside the protective cover by the telescopic component. After acquisition, the camera is moved inside the protective cover, enhancing the protection of the camera and preventing damage. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model.
[0014] Figure 2 This is a schematic cross-sectional view of the internal structure of this utility model.
[0015] Figure 3 This is a schematic cross-sectional view of the internal structure of this utility model.
[0016] Reference numerals in the attached figures: 1. Body; 2. High-definition camera; 3. Protective cover; 4. Fixing component; 5. Magnet; 6. Telescopic component; 7. Groove; 8. Round hole; 9. Fixing rod; 10. Bracket; 11. Through hole; 12. Support plate; 13. Moving plate; 14. Limiting rod; 15. Spring; 16. Limiting plate; 17. Pin; 18. Fixing block; 19. Pin hole; 20. T-shaped slide; 21. T-shaped slider; 22. Handle; 23. External threaded tube; 24. Internal threaded cover; 25. Base plate. Detailed Implementation
[0017] To make the objectives, technical solutions, and beneficial effects of this utility model clearer, the preferred embodiments of this utility model will be described in detail below with reference to the accompanying drawings, so as to facilitate the understanding of those skilled in the art.
[0018] like Figure 1-3 This utility model discloses a high-definition image acquisition device for unmanned aerial vehicles (UAVs). The device includes a body 1, and is characterized by further comprising a high-definition camera 2, a protective cover 3, a fixing component 4, a magnet 5, and a telescopic component 6. The bottom of the body 1 has a groove 7, with a circular hole 8 in the center of the groove 7. A magnet 5 is installed at the bottom of the circular hole 8. The top of the protective cover 3 is movably located within the groove 7, and a fixing rod 9, which is inserted into the circular hole 8, is installed on the top of the protective cover 3. The fixing rod 9 is a magnetic metal rod that can be attracted to the magnet 5. The protective cover 3 is also fixedly connected to the body 1 via the fixing component 4. The protective cover 3 is horizontally... The device is equipped with a telescopic component 6, with a bracket 10 mounted on one end. The front side of the protective cover 3 has a through hole 11, through which the high-definition camera 2 passes and is mounted on the bracket 10. The protective cover is attracted to a magnet by a magnetic metal fixing rod, making it easy to install on the bottom of the device. The two sides of the protective cover are also fixedly connected to the device through fixing components, enhancing the stability of the device and facilitating stable image acquisition. The device is also easy to disassemble and assemble with the device, making it convenient for maintenance or replacement. When acquiring images, the camera is moved outside the protective cover using the telescopic component. After acquisition, the camera is moved inside the protective cover to enhance the protection of the camera and prevent it from being damaged.
[0019] The telescopic component 6 is an electric telescopic rod. The bottom of the electric telescopic rod is installed on the inner wall of the rear side of the protective cover 3, and the top of the electric telescopic rod is equipped with a bracket 10. Before data acquisition, the camera is moved outside the protective cover through the through hole using the electric telescopic rod to acquire images.
[0020] The fixing component 4 includes a support plate 12, a movable plate 13, a limiting rod 14, a spring 15, a limiting plate 16, a pin 17, and a fixing block 18. Support plates 12 are installed on the bottom of both the left and right sides of the machine body 1. Limiting plates 16 are installed on the bottom of both the left and right sides of the machine body 1, in front of the support plates 12. A limiting rod 14 is installed between the support plate 12 and the limiting plate 16. A movable plate 13 is slidably mounted on the limiting rod 14. A spring 15 is installed between the movable plate 13 and the support plate 12. Fixing blocks 18 are installed near the top of both the left and right sides of the protective cover 3. Each fixing block 18 has a pin hole 19. The movable plate 17 is positioned near the fixing block. A pin 17 is installed on the side and inserted into the pin hole 19; T-shaped grooves 20 are provided on the bottom of the left and right sides of the body 1 and between the support plate 12 and the limiting plate 16; a T-shaped slider 21 that slides in the T-shaped groove 20 is installed on the top of the moving plate 13; a handle 22 is installed on the bottom of the moving plate 13; when installing the protective cover, the handle is used to compress the spring of the moving plate, causing the pin to move towards the support plate. After the protective cover is installed into the groove, the handle is released, and under the elastic force of the spring, the moving plate moves towards the fixing block, causing the pin to insert into the pin hole, limiting and fixing the protective cover, and enhancing the stability of the protective cover.
[0021] An external threaded pipe 23 is installed on the front side of the protective cover 3 and outside the through hole 11. An internal threaded cap 24 is threaded onto the external threaded pipe 23. After the image acquisition is completed, the camera is moved into the protective cover and the internal threaded cap is installed on the external threaded pipe to cover the through hole and reduce dust entry.
[0022] The bottom corners of the protective cover 3 are bolted with base plates 25; the base plates are detachably installed at the bottom of the protective cover to facilitate viewing the inside of the protective cover.
[0023] Work process:
[0024] The working principle of this utility model is as follows: During installation, the protective cover 3 is installed at the bottom of the body 1 and is attracted to the magnet 5 by the fixing rod 9 at its top. The protective cover 3 is also fixedly connected to the body 1 on both sides by the fixing components 4. When installing the protective cover, the handle 22 compresses the spring 15 of the moving plate 13, causing the pin 17 to move towards the support plate 12. After the protective cover 3 is installed into the groove 7, the handle is released. Under the elastic force of the spring 15, the moving plate 13 moves towards the fixing block 18, causing the pin 17 to insert into the pin hole 19, limiting and fixing the protective cover 3, and enhancing the stability of the protective cover 3. When acquiring images, the high-definition camera 2 is moved outside the protective cover 3 by the electric telescopic rod of the telescopic component 6 for acquisition. After acquisition, the camera is moved inside the protective cover, and the inner threaded cover 24 is installed on the outer threaded tube 23 to cover the through hole, enhancing the protection of the camera and preventing damage to the camera.
[0025] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and detail without departing from the scope defined by the claims of this utility model.
Claims
1. A high-definition image acquisition device for unmanned aerial vehicles (UAVs), comprising a body (1), characterized in that: The device also includes a high-definition camera (2), a protective cover (3), a fixing component (4), a magnet (5), and a telescopic component (6). The bottom of the body (1) is provided with a groove (7), and a round hole (8) is provided in the middle of the groove (7). A magnet (5) is installed at the bottom of the round hole (8). The top of the protective cover (3) is movably located in the groove (7). A fixing rod (9) is installed on the top of the protective cover (3) and inserted into the round hole (8). The fixing rod (9) is a magnetic metal rod that can be attracted to the magnet (5). The protective cover (3) is also fixedly connected to the body (1) through the fixing component (4). A telescopic component (6) is installed horizontally inside the protective cover (3). A bracket (10) is installed at one end of the telescopic component (6). A through hole (11) is provided on the front side of the protective cover (3). The high-definition camera (2) passes through the through hole (11) and is installed on the bracket (10).
2. The high-definition image acquisition device for unmanned aerial vehicles according to claim 1, characterized in that: The telescopic component (6) is an electric telescopic rod. The bottom of the electric telescopic rod is installed on the inner wall of the rear side of the protective cover (3), and a bracket (10) is installed on the top of the electric telescopic rod.
3. The high-definition image acquisition device for unmanned aerial vehicles according to claim 1, characterized in that: The fixing component (4) includes a support plate (12), a movable plate (13), a limiting rod (14), a spring (15), a limiting plate (16), a pin (17), and a fixing block (18). Support plates (12) are installed on the bottom of both the left and right sides of the machine body (1). Limiting plates (16) are installed on the bottom of both the left and right sides of the machine body (1) in front of the support plates (12). A limiting rod (14) is installed between the support plate (12) and the limiting plate (16). A movable plate (13) is slidably installed on the limiting rod (14). A spring (15) is installed between the movable plate (13) and the support plate (12). Fixing blocks (18) are installed on both the left and right sides of the protective cover (3) near the top. Pin holes (19) are provided on the fixing blocks (18). A pin (17) is installed on the side of the movable plate (13) near the fixing block and inserted into the pin hole (19).
4. The high-definition image acquisition device for unmanned aerial vehicles according to claim 3, characterized in that: The bottom of the left and right sides of the body (1) is provided with T-shaped grooves (20) between the support plate (12) and the limiting plate (16), and the top of the moving plate (13) is equipped with a T-shaped slider (21) that slides in the T-shaped grooves (20).
5. A high-definition image acquisition device for unmanned aerial vehicles according to claim 3, characterized in that: The bottom of the movable plate (13) is equipped with a handle (22).
6. The high-definition image acquisition device for unmanned aerial vehicles according to claim 1, characterized in that: An external threaded tube (23) is installed on the front side of the protective cover (3) and outside the through hole (11), and an internal threaded cap (24) is threaded onto the external threaded tube (23).
7. The high-definition image acquisition device for unmanned aerial vehicles according to claim 1, characterized in that: The protective cover (3) has a base plate (25) installed at the four corners of its bottom by bolts.